Rosenzweig Derek H, Quinn Thomas M, Haglund Lisbet
The Orthopaedics Research Lab, Department of Surgery, McGill University, Montreal, QC H3G1A4, Canada.
Department of Chemical Engineering, McGill University, Montreal, QC H3A2B2, Canada.
Int J Mol Sci. 2014 Aug 19;15(8):14427-41. doi: 10.3390/ijms150814427.
Osteoarthritis (OA) is a debilitating joint disorder resulting from an incompletely understood combination of mechanical, biological, and biochemical processes. OA is often accompanied by inflammation and pain, whereby cytokines associated with chronic OA can up-regulate expression of neurotrophic factors such as nerve growth factor (NGF). Several studies suggest a role for cytokines and NGF in OA pain, however the effects of changing mechanical properties in OA tissue on chondrocyte metabolism remain unclear. Here, we used high-extension silicone rubber membranes to examine if high mechanical strain (HMS) of primary articular chondrocytes increases inflammatory gene expression and promotes neurotrophic factor release. HMS cultured chondrocytes displayed up-regulated NGF, TNFα and ADAMTS4 gene expression while decreasing TLR2 expression, as compared to static controls. HMS culture increased p38 MAPK activity compared to static controls. Conditioned medium from HMS dynamic cultures, but not static cultures, induced significant neurite sprouting in PC12 cells. The increased neurite sprouting was accompanied by consistent increases in PC12 cell death. Low-frequency high-magnitude mechanical strain of primary articular chondrocytes in vitro drives factor secretion associated with degenerative joint disease and joint pain. This study provides evidence for a direct link between cellular strain, secretory factors, neo-innervation, and pain in OA pathology.
骨关节炎(OA)是一种使人衰弱的关节疾病,其由机械、生物和生化过程的不完全理解的组合导致。OA常伴有炎症和疼痛,慢性OA相关的细胞因子可上调神经生长因子(NGF)等神经营养因子的表达。多项研究表明细胞因子和NGF在OA疼痛中起作用,然而OA组织机械性能变化对软骨细胞代谢的影响仍不清楚。在此,我们使用高延伸硅橡胶膜来检查原代关节软骨细胞的高机械应变(HMS)是否会增加炎症基因表达并促进神经营养因子释放。与静态对照相比,HMS培养的软骨细胞显示NGF、TNFα和ADAMTS4基因表达上调,而TLR2表达降低。与静态对照相比,HMS培养增加了p38 MAPK活性。HMS动态培养而非静态培养的条件培养基诱导PC12细胞显著的神经突萌发。神经突萌发增加伴随着PC12细胞死亡的持续增加。体外原代关节软骨细胞的低频高强度机械应变驱动与退行性关节疾病和关节疼痛相关的因子分泌。本研究为OA病理学中细胞应变、分泌因子、新神经支配和疼痛之间的直接联系提供了证据。